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Compatibility-tuned distribution of nanoparticles in co-continuous rubber structures toward microwave absorption enhancement

机译:纳米粒子在共连续橡胶结构中的相容性调整分布,以增强微波吸收

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Development of novel and versatile approaches to engineer composites with light density, broad effective bandwidth and high microwave absorption (MA) capacity is of great importance. Here, co-continuous natural rubber/epoxidized natural rubber (NR/ENR) blends with a selective distribution of conductive carbon black nanoparticles (CCBs), have been fabricated by tow-roll mixing. ENR with abundant epoxide groups shows inferior wettability to CCB than NR, which is responsible for the preferential location of CCB in the NR/ENR blend. Increasing the epoxidation level of ENR promotes the preferential location of CCB and creates stronger dielectric loss, thus enhancing the MA properties of CCB/NR/ENR composites. When the epoxidation level increases to 40 mol%, the MA capacity of the composite has been significantly enhanced by 40%. Meanwhile, the qualified frequency bandwidth (RL < ?10 dB) of composites with ENR is 85% broader than that of CCB/NR composites. Such a novel approach of compatibility-tuned nanoparticles distribution in co-continuous rubber blends will significantly promote the multi-functional use of rubber and carbonaceous resources.
机译:开发新颖且用途广泛的方法来设计具有光密度,宽有效带宽和高微波吸收(MA)能力的复合材料非常重要。在这里,已经通过拖曳辊混法制备了具有连续分布的导电炭黑纳米颗粒(CCB)的共连续天然橡胶/环氧化天然橡胶(NR / ENR)共混物。具有丰富环氧基的ENR对CCB的润湿性比NR低,这是CCB在NR / ENR共混物中的优先位置的原因。增加ENR的环氧化水平可促进CCB的优先位置并产生更强的介电损耗,从而增强CCB / NR / ENR复合材料的MA性能。当环氧化水平增加至40mol%时,复合材料的MA容量已显着提高了40%。同时,具有ENR的复合材料的合格频率带宽(RL <?10 dB)比CCB / NR复合材料的带宽宽85%。这种在共连续橡胶共混物中相容性调整的纳米粒子分布的新颖方法将显着促进橡胶和含碳资源的多功能使用。

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